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Prospects of prompt gamma-ray burst polarimetry with POLAR-2

  • Ramandeep Gill
  • , Jiang He
  • , Jonathan Granot
  • , Jian Chao Sun
  • , Shuang Nan Zhang
  • , Yuan Hao Wang
  • , Johannes Hulsman
  • , Nicolas Produit
  • , Shao Lin Xiong

نتاج البحث: نشر في مجلةمقالةمراجعة النظراء

ملخص

The dominant radiation mechanism that powers the prompt (Formula presented) -ray emission in gamma-ray bursts (GRBs) remains poorly understood. High quality, time- and energy-resolved linear polarization measurements of prompt (Formula presented) -ray photons can distinguish between synchrotron and inverse-Compton processes and provide crucial constraints on the outflow properties. This will be achieved by POLAR-2 that is proposed as a dedicated GRB polarimeter and successor to POLAR. The High-energy Polarimetry Detector (HPD) is one of the three instruments of POLAR-2 that features significantly improved sensitivity in the (Formula presented)  keV energy range and a detection area four times larger than that of POLAR. Here we demonstrate the capabilities of the HPD to constrain key physical model parameters by creating and fitting to synthetic sources using a time-resolved spectro-polarimetric theoretical model of prompt GRB emission. The time-resolved spectral and polarization fits are performed using a novel technique featuring maximum likelihood over an unbinned (in time and energy) list of detected events. The constrained model parameters directly relate to the underlying source physics that would reveal an accelerating, coasting or decelerating emission region. For a pulse fluence of (Formula presented) and higher we can constrain the time-integrated polarization degree to an absolute accuracy ((Formula presented) ) of about (Formula presented) per cent, as long as source photons dominate over the background. In bright GRBs, such unprecedented accuracy at these energies will allow to distinguish between different models for the prompt GRB emission mechanism and constrain the magnetic field geometry, jet angular structure and outflow composition.

اللغة الأصليةالإنجليزيّة
رقم المقالstag452
دوريةMonthly Notices of the Royal Astronomical Society
مستوى الصوت547
رقم الإصدار3
المعرِّفات الرقمية للأشياء
حالة النشرنُشِر - 5 مارس 2026

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Publisher Copyright:
© The Author(s) 2026. Published by Oxford University Press on behalf of Royal Astronomical Society. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.

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